Flocculation could offer a low-cost and straightforward solution to harvest microalgae in an economic and energy-efficient way. Cationically modified cellulose nanocrystals (CNCs) have been proposed as an alternative to biopolymer-based flocculants such as chitosan. The aim of this study was to fine-tune the cationic modification of CNCs for use as flocculants for harvesting the freshwater microalgae Chlorella vulgaris. CNCs were functionalized with two cationic groups, pyridinium (PYR) or methylimidazolium (MIM), and the degree of substitution (DS) was varied by controlling reaction conditions (stoichiometry, reaction time, and temperature). The DS ranged from 0.08 to 0.34 for PYR modifications and from 0.10 to 0.29 for MIM modifications. ...
International audienceHigh energy consumption during harvesting is one of the main bottlenecks for s...
The global demand for biomass for food, feed, biofuels, and chemical production is expected to incre...
Cellulose nanocrystals (CNCs) are renewable nanosized materials with exceptional physicochemical pro...
Flocculation of marine microalgae is challenging because of the high ionic strength of the culture m...
This study presents a novel flocculant for harvesting Chlorella vulgaris as model species for freshw...
We aimed at designing novel cellulose nanocrystals (CNCs) that could serve as microalgae flocculants...
This study presents a novel flocculant for harvesting Chlorella vulgaris as model species for freshw...
Microalgae are a promising source of biomass for the production of, amongst others, food, feed and b...
Cellulose nanocrystals were grafted with imidazole functionalities up to DS 0.06 using a one-pot fun...
Various cellulosic materials have replaced petroleum-derived polymers, offering natural and sustaina...
International audienceMicroalgae are a promising resource for biofuel production, although their ind...
Due to their small size and low concentration in the culture medium, cost-efficient harvesting of mi...
© Published under licence by IOP Publishing Ltd. Microalgae are considered as one promising source o...
Flocculation of microalgae is a promising technique to reduce the costs and energy required for harv...
This study aims to elucidate the mechanisms governing the harvesting efficiency of Chlorella vulgari...
International audienceHigh energy consumption during harvesting is one of the main bottlenecks for s...
The global demand for biomass for food, feed, biofuels, and chemical production is expected to incre...
Cellulose nanocrystals (CNCs) are renewable nanosized materials with exceptional physicochemical pro...
Flocculation of marine microalgae is challenging because of the high ionic strength of the culture m...
This study presents a novel flocculant for harvesting Chlorella vulgaris as model species for freshw...
We aimed at designing novel cellulose nanocrystals (CNCs) that could serve as microalgae flocculants...
This study presents a novel flocculant for harvesting Chlorella vulgaris as model species for freshw...
Microalgae are a promising source of biomass for the production of, amongst others, food, feed and b...
Cellulose nanocrystals were grafted with imidazole functionalities up to DS 0.06 using a one-pot fun...
Various cellulosic materials have replaced petroleum-derived polymers, offering natural and sustaina...
International audienceMicroalgae are a promising resource for biofuel production, although their ind...
Due to their small size and low concentration in the culture medium, cost-efficient harvesting of mi...
© Published under licence by IOP Publishing Ltd. Microalgae are considered as one promising source o...
Flocculation of microalgae is a promising technique to reduce the costs and energy required for harv...
This study aims to elucidate the mechanisms governing the harvesting efficiency of Chlorella vulgari...
International audienceHigh energy consumption during harvesting is one of the main bottlenecks for s...
The global demand for biomass for food, feed, biofuels, and chemical production is expected to incre...
Cellulose nanocrystals (CNCs) are renewable nanosized materials with exceptional physicochemical pro...